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一种具有鲁棒内环电流控制的可调度虚拟振荡器电网形成控制方法以提升暂态稳定性
A Sophisticated Grid-Forming Dispatchable-Virtual Oscillator Control With Robust Inner Current Control for Improving Transient Stability
| 作者 | Muntathir Al Talaq · Muhammad Bakr Abdelghany · Ahmed Al-Durra · Hatem Zeineldin · Tarek EL-Fouly |
| 期刊 | IEEE Transactions on Power Electronics |
| 出版日期 | 2025年6月 |
| 技术分类 | 控制与算法 |
| 技术标签 | SiC器件 构网型GFM |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 可调度虚拟振荡器控制 大信号稳定性 内电流控制 自适应可调度虚拟振荡器控制 吸引域 |
语言:
中文摘要
可调度虚拟振荡器控制(D - VOC)是一种颇具前景的时域电网形成(GFM)技术,旨在模拟物理振荡器的动态行为。大信号稳定性(LSS)是电力系统规划的关键方面,主要涉及电源在受到干扰后彼此同步的能力。然而,GFM暂态稳定性分析通常忽略了内部电流控制(ICC)和电压控制(VC)的影响,这可能导致评估不准确。实际上,本文分析了ICC、VC和电流参考角对D - VOC大信号稳定性的影响,确定了纳入ICC虽然提高了稳定性评估的精度,但同时也限制了吸引域(RoA)。此外,本文使用一般二次型和多项式李雅普诺夫函数对吸引域进行了表征。为应对这些挑战,本研究提出了一个复杂的框架,即自适应D - VOC(AD - VOC),它是对标准D - VOC的改进,通过外环反馈和ICC前馈引入了额外的自由度以支持故障穿越。将所提出的控制方法与D - VOC和虚拟同步发电机(VSG)型GFM进行了比较,数值模拟表明,在短路和负载变化扰动期间,AD - VOC在适应性、稳定性和灵活性方面优于传统的D - VOC和VSG,其吸引域有显著改善,动态响应加快。因此,所提出的方法不仅降低了电力电子变换器的总体成本,还延长了其使用寿命。通过在实时运行的实验室规模微电网中实施AD - VOC,进一步验证了所提出的方法。
English Abstract
Dispatchable-virtual oscillator control (D-VOC) is a promising time-domain grid-forming (GFM) technology designed to emulate the dynamic behavior of physical oscillators. Large-signal stability (LSS) is a crucial aspect of power system planning, mainly concerning the ability of power sources to synchronize with each other following a disturbance. However, GFM transient stability analysis typically omits the influence of inner current control (ICC) and voltage control (VC), potentially resulting in inaccurate assessments. Indeed, this article analyzes the impact of ICC, VC, and current reference angle on the LSS of D-VOC, determining that incorporating ICC, though improving the precision of stability evaluations, simultaneously constrains the region of attraction (RoA). Moreover, the RoA is characterized using both the general quadratic and polynomial Lyapunov functions. In order to address these challenges, this study proposes a sophisticated framework, namely adaptive D-VOC (AD-VOC), an enhancement of standard D-VOC that introduces an additional degree of freedom through outer loop feedback and ICC feedforward to support fault ride-through. The proposed control is compared with the D-VOC and virtual synchronous generator (VSG) GFMs and numerical simulations show that the AD-VOC performs better than the traditional D-VOC and VSG in terms of adaptability, stability, and flexibility during short-circuit and load variation disturbances, marked by a substantial improvement in the RoA and accelerated dynamic response. Consequently, the proposed method not only reduces the overall cost associated with power electronics converters but also extends their operational lifespan. The proposed approach is further validated by implementing the AD-VOC in a lab-scale microgrid running in real-time.
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SunView 深度解读
从阳光电源的业务视角来看,这项自适应可调度虚拟振荡器控制(AD-VOC)技术对我们的构网型(Grid-Forming)逆变器产品线具有重要战略价值。该技术直接解决了当前光伏储能系统在电网扰动下的暂态稳定性难题,这正是我们高比例新能源接入场景中面临的核心挑战。
技术价值方面,AD-VOC通过引入内环电流控制和外环反馈机制,显著扩大了吸引域范围并加速动态响应,这意味着我们的逆变器产品在短路故障和负荷突变时能展现更强的故障穿越能力。相比传统虚拟同步机(VSG)控制,该技术在适应性、稳定性和灵活性上的优势,可直接提升我们1500V大功率逆变器和储能变流器PCS产品的并网性能,特别适用于弱电网和微电网场景。
从产品应用角度,该技术已在实验室微电网中得到实时验证,技术成熟度达到TRL 5-6级,具备向工程化转化的基础。对于阳光电源正在推进的"光储氢"一体化解决方案,AD-VOC能够增强多能源系统的协同稳定性,降低系统设计冗余,从而减少功率电子器件成本并延长设备寿命,这与我们降本增效的产品策略高度契合。
技术挑战主要集中在参数整定复杂度和多机并联场景下的协调控制。建议我们的中央研究院重点关注该技术的工程化实现,特别是与现有IGBT/SiC驱动平台的集成,以及在大规模光伏电站和工商业储能项目中的实证测试。这项技术有望成为我们下一代构网型产品的核心竞争力,支撑公司在全球新型电力系统建设中的技术领先地位。